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首页> 外文期刊>Journal of Membrane Science >Simulation of heat and mass transfer in direct contact membrane distillation (MD): The effect of membrane physical properties
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Simulation of heat and mass transfer in direct contact membrane distillation (MD): The effect of membrane physical properties

机译:直接接触式膜蒸馏(MD)中传热和传质的模拟:膜物理性质的影响

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摘要

A Monte Carlo simulation model is developed to study vapor flux through hydrophobic membranes in association with direct contact membrane distillation (DCMD) process. The porous membrane is represented by a three-dimensional network model of inter-connected cylindrical pores with distributive effective pore sizes. Vapor flux through membrane pores is described by gas transport mechanisms founded on the kinetic theory of gases for a single cylindrical pore. This model can take into consideration the effects of temperature polarization phenomenon, porous membrane physical properties, including membrane pores inter-connectivity (topology), process dynamics, and apply them into the prediction of process vapor flux (permeability) and the description of MD transporting process. The model can simultaneously solve for the MD processes vapor flux and membrane effective surface temperatures, contrary to other models in which one of them has to be given in order to solve for the other. We argue that this Monte Carlo simulation model can adequately describe MD processes transport phenomenon and predicts process vapor flux without resorting to any adjustable parameters. It is comprehensive in its approach; and it can be applied to all configurations of MD processes published in the literature. The results obtained, in general, show an excellent qualitative agreement with available experimental data. (c) 2005 Elsevier B.V. All rights reserved.
机译:建立了蒙特卡罗模拟模型,以研究与直接接触膜蒸馏(DCMD)过程相关的通过疏水膜的蒸汽通量。多孔膜由具有分布有效孔径的相互连接的圆柱孔的三维网络模型表示。通过膜孔的蒸汽通量是由基于单个圆柱孔的气体动力学理论的气体传输机制描述的。该模型可以考虑温度极化现象,多孔膜物理特性(包括膜孔的互连性(拓扑)),过程动力学的影响,并将其应用于过程蒸汽通量(渗透率)的预测和MD传输的描述处理。该模型可以同时求解MD过程的蒸气通量和膜的有效表面温度,这与其他模型(其中一个必须给出以求解另一个)相反。我们认为,此蒙特卡洛模拟模型可以充分描述MD过程的运输现象并预测过程的蒸汽通量,而无需借助任何可调整的参数。它的方法是全面的;它可以应用于文献中发布的MD过程的所有配置。通常,获得的结果与可用的实验数据显示出极好的定性一致性。 (c)2005 Elsevier B.V.保留所有权利。

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